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首页> 外文期刊>Chemosphere >Benefits of ozonation before activated carbon adsorption for the removal of organic micropollutants from wastewater effluents
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Benefits of ozonation before activated carbon adsorption for the removal of organic micropollutants from wastewater effluents

机译:活性炭吸附前进行臭氧氧化处理可从废水中去除有机微量污染物的好处

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摘要

Advanced processes for the removal of organic micropollutants (OMPs) from wastewater effluents include adsorption onto activated carbon, ozonation, or a combination of both processes. The removal of 28 OMPs present in a real wastewater effluent was studied by ozonation coupled to activated carbon adsorption and compared to a sole adsorption. The influence of the specific ozone dose (0.09-1.29 gO(3)/gDOC) and the influence of the powdered activated carbon (PAC) dose (2, 5 and 10 mg/L) were first studied separately. OMPs removal increased with both the specific ozone dose (up to 80% for a dose higher than 0.60 gO(3)/gDOC) and the PAC dose. Ozonation performances decreased in presence of suspended solids, which were converted to dissolved organic carbon. A correction of the specific ozone dose according to the suspended solids levels, in addition to nitrite, should be considered. The influence of ozonation (0.09, 0.22, 0.94 and 1.29 gO(3)/gDOC) on OMPs adsorption was then assessed. OMPs adsorption didn't change at low specific ozone doses but increased at higher specific ozone doses due to a decrease in DOM adsorption and competition with OMPs. At low ozone doses followed by adsorption (0.22 gO(3)/gDOC and 10 mg/L PAC), the two processes appeared complementary as OMPs with a low reactivity toward ozone were well absorbed onto PAC while most OMPs refractory to adsorption were well eliminated by ozone. Improved removals were obtained for all compounds with these selected doses, reaching more than 80% removal for most OMPs while limiting the formation of bromate ion. (C) 2019 Elsevier Ltd. All rights reserved.
机译:从废水中去除有机微污染物(OMPs)的高级方法包括吸附到活性炭上,进行臭氧化或这两种方法的组合。通过臭氧化与活性炭吸附耦合研究了真实废水中28种OMP的去除,并与单独的吸附进行了比较。首先分别研究了特定臭氧剂量(0.09-1.29 gO(3)/ gDOC)的影响和粉状活性炭(PAC)剂量(2、5和10 mg / L)的影响。 OMP的去除随着特定的臭氧剂量(对于高于0.60 gO(3)/ gDOC的剂量高达80%)和PAC剂量而增加。在悬浮固体存在下,臭氧化性能下降,这些悬浮固体转化为溶解的有机碳。除亚硝酸盐外,还应考虑根据悬浮固体含量校正特定臭氧剂量。然后评估臭氧化(0.09、0.22、0.94和1.29 gO(3)/ gDOC)对OMPs吸附的影响。在低特定臭氧剂量下,OMP的吸附量没有变化,但在较高特定臭氧剂量下,其吸附量增加了,这是因为DOM吸附减少以及与OMP的竞争。在低臭氧剂量后接着吸附(0.22 gO(3)/ gDOC和10 mg / L PAC),这两个过程似乎是互补的,因为对臭氧具有低反应性的OMP被很好地吸收到PAC上,而大多数难吸附的OMP被很好地消除了通过臭氧。对于具有这些选定剂量的所有化合物,去除率都有所提高,大多数OMP的去除率超过80%,同时限制了溴酸根离子的形成。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2020年第4期|125530.1-125530.11|共11页
  • 作者单位

    Univ Paris Est Creteil AgroParisTech Ecole Ponts ParisTech Lab Eau Environm & Syst Urbains UMR MA 102 Creteil France;

    Univ Montpellier CNRS UMR 5635 IEM ENSCM CC047 Montpellier France;

    Serv Publ Lassainissement Francilien SIAAP Direct Innovat Colombes France;

    Univ Claude Bernard Lyon 1 Univ Lyon CNRS Inst Sci Analyt UMR 5280 Villeurbanne France;

    Univ Claude Bernard Lyon 1 Univ Lyon CNRS INSA Lyon MATEIS UMR 5510 Villeurbanne France;

    Saur Direct Rech & Dev Maurepas France;

    Univ Paris Est Creteil AgroParisTech Ecole Ponts ParisTech Lab Eau Environm & Syst Urbains UMR MA 102 Creteil France|French Inst Sci & Technol Transport Dev & Network Geotech Engn Environm Nat Hazards & Earth Sci Dep Water & Environm Lab LEE IRSTV F-44340 Bouguenais France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wastewater advanced treatment; Organic micropollutants; Ozonation; Activated carbon adsorption;

    机译:废水深度处理;有机微量污染物;臭氧化;活性炭吸附;

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